Center for Open Research Resources & Equipment, University of Connecticut, Storrs, CT, USA.
Department of Biochemistry and Molecular Biotechnology, UMass Chan Medical School, Worcester, MA, USA.
FEBS Lett. 2022 Feb;596(4):479-490. doi: 10.1002/1873-3468.14276. Epub 2022 Jan 17.
The activation of oncogenic C-terminal binding Protein (CtBP) transcriptional activity is coupled with NAD(H) binding and homo-oligomeric assembly, although the level of CtBP assembly and nucleotide binding affinity continues to be debated. Here, we apply biophysical techniques to address these fundamental issues for CtBP1 and CtBP2. Our ultracentrifugation results unambiguously demonstrate that CtBP assembles into tetramers in the presence of saturating NAD or NADH with tetramer to dimer dissociation constants about 100 nm. Isothermal titration calorimetry measurements of NAD(H) binding to CtBP show dissociation constants between 30 and 500 nm, depending on the nucleotide and paralog. Given cellular levels of NAD , CtBP is likely to be fully saturated with NAD under physiological concentrations suggesting that CtBP is unable to act as a sensor for NADH levels.
致癌 C 端结合蛋白(CtBP)转录活性的激活与 NAD(H)结合和同型寡聚组装相关,尽管 CtBP 组装的水平和核苷酸结合亲和力仍存在争议。在这里,我们应用生物物理技术来解决 CtBP1 和 CtBP2 的这些基本问题。我们的超速离心结果明确表明,CtBP 在存在饱和 NAD 或 NADH 的情况下组装成四聚体,四聚体到二聚体的解离常数约为 100nm。等温滴定量热法测量 NAD(H)与 CtBP 的结合显示,解离常数在 30nm 到 500nm 之间,具体取决于核苷酸和同源物。考虑到细胞内 NAD 的水平,CtBP 在生理浓度下可能与 NAD 完全饱和,这表明 CtBP 不能作为 NADH 水平的传感器。